Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate
Abstract Due to high-ultra thermic significances, the nanosize materials are used in various chemical and mechanical engineering, modern technology and thermic engineering eras. For industrial growth of a country, one of the biggest challenges for engineers and scientists is improvement in thermal p...
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Nature Portfolio
2023-08-01
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Series: | Scientific Reports |
Online Access: | https://doi.org/10.1038/s41598-023-41141-1 |
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author | Humaira Sharif Bagh Ali Imran Siddique Iqra Saman Mohammed M. M. Jaradat Mohammed Sallah |
author_facet | Humaira Sharif Bagh Ali Imran Siddique Iqra Saman Mohammed M. M. Jaradat Mohammed Sallah |
author_sort | Humaira Sharif |
collection | DOAJ |
description | Abstract Due to high-ultra thermic significances, the nanosize materials are used in various chemical and mechanical engineering, modern technology and thermic engineering eras. For industrial growth of a country, one of the biggest challenges for engineers and scientists is improvement in thermal production and resources. In this study we analyzed the momentum and thermic aspects of MHD Ellis ternary nano material embedded with dust particles via stretchable Riga plate including volume concentration of dust material. The flow generating PDE’s for two phase models are minimized into dimensionless nonlinear ODE’s by using the right modification. To acquire the graphical results the BVP4c method was adopted in MATLAB software. Fundamental aspects affecting velocity and temperature have investigated through graphs. Additionally Nusselt number and skin friction have also been evaluated. Compared it with previous literature to check the validity of results. Finding reveals that as compared to dusty phase the performance of trihybrid nano phase thermal transport is improved. Moreover, the temperature profile increases for rotational and volume fraction dust particles parameter. Dusty fluids are used in numerous manufacturing and engineering sectors, like petroleum transport, car smoke emissions, caustic granules in mining and power plant pipes. |
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institution | Directory Open Access Journal |
issn | 2045-2322 |
language | English |
last_indexed | 2024-03-10T22:01:31Z |
publishDate | 2023-08-01 |
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spelling | doaj.art-8fe6f3dd5f914e8bb7744bceaf168b4d2023-11-19T12:55:56ZengNature PortfolioScientific Reports2045-23222023-08-0113111210.1038/s41598-023-41141-1Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plateHumaira Sharif0Bagh Ali1Imran Siddique2Iqra Saman3Mohammed M. M. Jaradat4Mohammed Sallah5Department of Mathematics, Government College University Faisalabad, Layyah CampusSchool of Mechanical Engineering and Automation, Harbin Institute of TechnologyDepartment of Mathematics, University of Management and TechnologyDepartment of Mathematics, University of Management and TechnologyMathematics Program, Department of Mathematics, Statistics and Physics, College of Arts and Sciences, Qatar UniversityApplied Mathematical Physics Research Group, Physics Department, Faculty of Science, Mansoura UniversityAbstract Due to high-ultra thermic significances, the nanosize materials are used in various chemical and mechanical engineering, modern technology and thermic engineering eras. For industrial growth of a country, one of the biggest challenges for engineers and scientists is improvement in thermal production and resources. In this study we analyzed the momentum and thermic aspects of MHD Ellis ternary nano material embedded with dust particles via stretchable Riga plate including volume concentration of dust material. The flow generating PDE’s for two phase models are minimized into dimensionless nonlinear ODE’s by using the right modification. To acquire the graphical results the BVP4c method was adopted in MATLAB software. Fundamental aspects affecting velocity and temperature have investigated through graphs. Additionally Nusselt number and skin friction have also been evaluated. Compared it with previous literature to check the validity of results. Finding reveals that as compared to dusty phase the performance of trihybrid nano phase thermal transport is improved. Moreover, the temperature profile increases for rotational and volume fraction dust particles parameter. Dusty fluids are used in numerous manufacturing and engineering sectors, like petroleum transport, car smoke emissions, caustic granules in mining and power plant pipes.https://doi.org/10.1038/s41598-023-41141-1 |
spellingShingle | Humaira Sharif Bagh Ali Imran Siddique Iqra Saman Mohammed M. M. Jaradat Mohammed Sallah Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate Scientific Reports |
title | Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate |
title_full | Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate |
title_fullStr | Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate |
title_full_unstemmed | Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate |
title_short | Numerical investigation of dusty tri-hybrid Ellis rotating nanofluid flow and thermal transportation over a stretchable Riga plate |
title_sort | numerical investigation of dusty tri hybrid ellis rotating nanofluid flow and thermal transportation over a stretchable riga plate |
url | https://doi.org/10.1038/s41598-023-41141-1 |
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